Intraosteal Behavior of Porous Scaffolds: The mCT Raw-Data Analysis as a Tool for Better Understanding
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Francisco Martínez-Martínez | Luis Meseguer-Olmo | José Luis Calvo-Guirado | Juan Manuel Aragoneses | Andrés Parrilla-Almansa | Carlos Alberto González-Bermúdez | Silvia Sánchez-Sánchez | Carlos Manuel Martínez-Cáceres | Juan José Piñero de Armas | Nuria García-Carrillo | Piedad N. De Aza | N. García-Carrillo | C. González-Bermúdez | L. Meseguer-Olmo | P. N. Aza | F. Martínez-Martínez | J. Calvo-Guirado | J. Aragoneses | C. Martínez-Cáceres | S. Sánchez-Sánchez | Andrés Parrilla-Almansa
[1] A. Azim,et al. Evaluation of horizontal ridge augmentation using beta tricalcium phosphate and demineralized bone matrix: A comparative study , 2013, Journal of clinical and experimental dentistry.
[2] Young-Kyun Kim,et al. Evaluation of the Healing Potential of Demineralized Dentin Matrix Fixed with Recombinant Human Bone Morphogenetic Protein-2 in Bone Grafts , 2017, Materials.
[3] Udo Hoffmann,et al. Computed tomographic coronary angiography: an alternative to invasive coronary angiography. , 2005, The Canadian journal of cardiology.
[4] Ralph Müller,et al. Guidelines for assessment of bone microstructure in rodents using micro–computed tomography , 2010, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[5] J. Delaissé,et al. A scrutiny of matrix metalloproteinases in osteoclasts: evidence for heterogeneity and for the presence of MMPs synthesized by other cells. , 2004, Bone.
[6] Andreas Pommert,et al. 3D-visualization of tomographic volume data using the generalized voxel-model , 1989, VVS.
[7] Jose Luis Calvo-Guirado,et al. Comparison of Two Xenograft Materials Used in Sinus Lift Procedures: Material Characterization and In Vivo Behavior , 2017, Materials.
[8] Patricia Mazón,et al. Material processing of a new calcium silicophosphate ceramic , 2016 .
[9] Hossein Baharvand,et al. RETRACTED ARTICLE: Mesenchymal stem cells seeded onto tissue-engineered osteoinductive scaffolds enhance the healing process of critical-sized radial bone defects in rat , 2018, Cell and Tissue Research.
[10] Luis Meseguer-Olmo,et al. αTCP ceramic doped with dicalcium silicate for bone regeneration applications prepared by powder metallurgy method: in vitro and in vivo studies. , 2013, Journal of biomedical materials research. Part A.
[11] L. Berlin. Radiologic errors, past, present and future , 2014, Diagnosis.
[12] W. Banlunara,et al. Collagen and mPCL-TCP scaffolds induced differential bone regeneration in ovary-intact and ovariectomized rats. , 2018, Bio-medical materials and engineering.
[13] Anke Bernstein,et al. Characterization and distribution of mechanically competent mineralized tissue in micropores of β-tricalcium phosphate bone substitutes , 2017 .
[14] Brian Gale,et al. Interpretive Error in Radiology. , 2017, AJR. American journal of roentgenology.
[15] Marcus Abboud,et al. Physical properties, mechanical behavior, and electron microscopy study of a new α-TCP block graft with silicon in an animal model. , 2012, Journal of biomedical materials research. Part A.
[16] E Lucarelli,et al. When size matters: differences in demineralized bone matrix particles affect collagen structure, mesenchymal stem cell behavior, and osteogenic potential. , 2017, Journal of biomedical materials research. Part A.
[17] P. Maier,et al. Noninvasive Small Rodent Imaging: Significance for the 3R Principles , 2011 .
[18] Christoph Palm,et al. Send Orders of Reprints at Reprints@benthamscience.net Viewpoints on Medical Image Processing: from Science to Application , 2022 .
[19] Zoltán Gyöngyi,et al. Novel radiomics evaluation of bone formation utilizing multimodal (SPECT/X-ray CT) in vivo imaging , 2018, PloS one.
[20] L. Garland. On the scientific evaluation of diagnostic procedures. , 1949, Radiology.
[21] István Kovács,et al. Incremental value of preprocedural coronary computed tomographic angiography to classical coronary angiography for prediction of PCI complexity in left main stenosis , 2013 .
[22] Antonio Barone,et al. Volumetric analysis of remodelling pattern after ridge preservation comparing use of two types of xenografts. A multicentre randomized clinical trial. , 2016, Clinical oral implants research.
[23] P. Velásquez,et al. Synthesis and stability of α-tricalcium phosphate doped with dicalcium silicate in the system Ca3(PO4)2–Ca2SiO4 , 2010 .
[24] Daniel Kolditz,et al. Iterative reconstruction methods in X-ray CT. , 2012, Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics.
[25] Thomas A Einhorn,et al. The biology of fracture healing. , 2011, Injury.
[26] Michael A. Bruno,et al. Understanding and Confronting Our Mistakes: The Epidemiology of Error in Radiology and Strategies for Error Reduction. , 2015, Radiographics : a review publication of the Radiological Society of North America, Inc.
[27] Elena M De-Juan-Pardo,et al. Periosteum‐derived mesenchymal progenitor cells in engineered implants promote fracture healing in a critical‐size defect rat model , 2019, Journal of tissue engineering and regenerative medicine.
[28] R. Castellino,et al. Computer aided detection (CAD): an overview , 2005, Cancer imaging : the official publication of the International Cancer Imaging Society.
[29] Piedad N. De Aza,et al. The System Ca3(PO4)2–Ca2SiO4: The Sub-System Ca2SiO4–7CaOP2O52SiO2 , 2011 .
[30] H. Hirschfelder,et al. A computed tomography assessment of femoral and acetabular bone changes after total hip arthroplasty , 2002, International Orthopaedics.
[31] Patricia Ros-Tárraga,et al. Demineralized Bone Matrix Coating Si-Ca-P Ceramic Does Not Improve the Osseointegration of the Scaffold , 2018, Materials.
[32] José Luis Calvo Guirado,et al. Bone neo-formation and mineral degradation of 4Bone.(®) Part I: material characterization and SEM study in critical size defects in rabbits. , 2015, Clinical oral implants research.
[33] Patricia Mazón,et al. Comparison among the physical properties of calcium phosphate‐based bone substitutes of natural or synthetic origin , 2018 .
[34] Stefan Niehues,et al. Miniature pigs as an animal model for implant research: bone regeneration in critical-size defects. , 2009, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[35] Gamal Baroud,et al. Multimodal analysis of in vivo resorbable CaP bone substitutes by combining histology, SEM, and microcomputed tomography data. , 2018, Journal of biomedical materials research. Part B, Applied biomaterials.
[36] André Antonio Pelegrine,et al. Particulated, Extracted Human Teeth Characterization by SEM–EDX Evaluation as a Biomaterial for Socket Preservation: An In Vitro Study , 2019, Materials.
[37] Patricia Mazón,et al. Phase transitions in single phase Si–Ca–P-based ceramic under thermal treatment , 2015 .
[38] Piedad N. De Aza,et al. A Si-αTCP Scaffold for Biomedical Applications: An Experimental Study Using the Rabbit Tibia Model , 2017 .
[39] P. Velásquez,et al. Influence of biphasic β-TCP with and without the use of collagen membranes on bone healing of surgically critical size defects. A radiological, histological, and histomorphometric study. , 2014, Clinical oral implants research.
[40] Michael J. Yaszemski,et al. Preclinical Bone Repair Models in Regenerative Medicine , 2019, Principles of Regenerative Medicine.
[41] Kunio Doi,et al. Computer-aided diagnosis in medical imaging: Historical review, current status and future potential , 2007, Comput. Medical Imaging Graph..
[42] Patricia Mazón,et al. Novel Resorbable and Osteoconductive Calcium Silicophosphate Scaffold Induced Bone Formation , 2016, Materials.
[43] T M Lehmann,et al. Advances in Biomedical Image Analysis , 2004, Methods of Information in Medicine.